Biofilm Research Laboratory, Institute of Dental Sciences, Faculty of Dental Medicine, The Hebrew University of Jerusalem, Jerusalem, Israel.
The Institute for Drug Research, School of Pharmacy, The Hebrew University of Jerusalem, Jerusalem, Israel.
Biomed Res Int. 2017;2017:3510124. doi: 10.1155/2017/3510124. Epub 2017 Oct 10.
Thiazolidinediones (TZDs) have been found to act as effective quorum sensing quenchers, capable of preventing biofilm formation. Our previous studies demonstrated a profound antibiofilm effect of the TZD derivative thiazolidinedione-8 (S-8), either in solution or incorporated into a sustained-release membrane (SRM-S-8) under batch conditions. In the present study, we used a constant depth film fermenter model in order to investigate the impact of SRM-S-8 on mixed - biofilm development, under flow conditions. We found that essential parameters of cospecies biofilm maintenance and maturation, such as metabolic activity, biofilm thickness, roughness, extracellular polysaccharides production, and morphology of both pathogens, were altered by SRM-S-8 in the flow system. We propose that prolonged and sustained release of S-8 in a flow-through system allows better penetration of the active agent to deeper layers of the mixed biofilm, thereby increasing its activity against both pathogens. In conclusion, the use of a locally applied sustained-release drug delivery system of S-8 can affect the dental polymicrobial biofilm, resulting in clinical improvements and a better patient compliance.
噻唑烷二酮 (TZDs) 已被发现可作为有效的群体感应淬灭剂,能够防止生物膜形成。我们之前的研究表明,噻唑烷二酮衍生物噻唑烷二酮-8(S-8)在溶液中或在间歇条件下掺入持续释放膜(SRM-S-8)中时,具有显著的抗生物膜作用。在本研究中,我们使用恒深膜发酵器模型来研究在流动条件下,SRM-S-8 对混合生物膜发育的影响。我们发现,在流动系统中,SRM-S-8 改变了协同生物膜维持和成熟的重要参数,如代谢活性、生物膜厚度、粗糙度、胞外多糖产生以及两种病原体的形态。我们提出,在流动系统中持续和延长 S-8 的释放允许活性物质更好地渗透到混合生物膜的更深层,从而提高其对两种病原体的活性。总之,局部应用 S-8 的持续释放药物输送系统可以影响口腔多微生物生物膜,从而改善临床效果并提高患者的依从性。